Chemistry & Chemical Technology
Scope & Guideline
Exploring the Synergy of Chemistry and Engineering
Introduction
Aims and Scopes
- Advanced Oxidation Processes:
The journal emphasizes research on advanced oxidation processes for environmental applications, particularly in the treatment and remediation of organic pollutants in water. - Biopolymer Development:
A core area of focus is on the synthesis and application of biopolymers, examining their potential to reduce agricultural waste and enhance sustainability in material science. - Waste Management and Recycling:
Research on methods for recycling and upcycling waste materials, such as biomass and plastics, into valuable products is a prominent theme. - Nanotechnology in Environmental Solutions:
The journal features studies on nanotechnology applications, especially concerning wastewater treatment and the removal of heavy metals and dyes. - Sustainable Materials:
The journal explores the development of eco-friendly materials and composites, with a focus on reducing environmental impact and enhancing material properties. - Mathematical and Computational Modeling:
There is a consistent interest in mathematical modeling and simulations in chemical processes, which aids in understanding complex interactions and optimizing conditions. - Chemical Synthesis and Characterization:
Research on the synthesis and characterization of new chemical compounds, including catalysts and polymers, is a foundational element of the journal.
Trending and Emerging
- Sustainability and Green Chemistry:
There is a marked increase in research exploring sustainable practices and green chemistry, aiming to mitigate environmental impacts and enhance the lifecycle of materials. - Biomass and Biochar Utilization:
Emerging themes include the conversion of biomass into biochar and other valuable materials, highlighting the journal's commitment to waste reduction and sustainable resource management. - Advanced Materials for Environmental Applications:
The trend is shifting towards innovative materials, such as nanocomposites and hybrid materials designed for specific environmental applications, particularly in pollutant removal. - Interdisciplinary Approaches:
An increasing number of publications are adopting interdisciplinary approaches, combining chemistry with fields like biology and environmental science to tackle complex problems. - Mathematical Modeling in Chemical Processes:
There is a growing focus on mathematical modeling and simulations to optimize chemical processes, reflecting the journal's interest in precision and efficiency in chemical technology. - Nanotechnology in Remediation:
Research utilizing nanotechnology for environmental remediation, particularly in wastewater treatment and heavy metal removal, is gaining traction and showcasing innovative solutions.
Declining or Waning
- Traditional Chemical Processes:
Research focused on traditional chemical processes, such as basic organic synthesis without sustainable or innovative approaches, has become less frequent as the field shifts towards greener alternatives. - Conventional Fuel Technologies:
Studies centered on conventional fossil fuel technologies are waning as the journal increasingly emphasizes renewable energy solutions and sustainable practices. - Basic Analytical Techniques:
Papers focusing solely on basic analytical techniques without integration into broader chemical technology applications are appearing less frequently, indicating a shift towards more applied research.
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